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d = 3 anisotropic and d = 2 tJ models:phase diagrams, thermodynamic properties, and chemical potentialshift
Authors:M. Hinczewski  A. N. Berker
Affiliation:1. Feza Gürsey Research Institute, TüBITAK - Bosphorus University, ?engelk?y 34680, Istanbul, Turkey
2. Department of Physics, Massachusetts Institute of Technology, Cambridge, Massachusetts, 02139, USA
3. Department of Physics, Ko? University, Sar? yer 34450, Istanbul, Turkey
4. Department of Physics, Istanbul Technical University, Maslak 34469, Istanbul, Turkey
Abstract:The anisotropic d=3 tJ model is studied by renormalization-group theory, yielding the evolution of the system as interplane coupling is varied from the isotropic three-dimensional to quasi-two-dimensional regimes. Finite-temperature phase diagrams, chemical potential shifts, and in-plane and interplane kinetic energies and antiferromagnetic correlations are calculated for the entire range of electron densities. We find that the novel τ phase, seen in earlier studies of the isotropic d=3 tJ model, persists even for strong anisotropy. While the τ phase appears at low temperatures at 30–35% hole doping away from 〈 ni〉=1, at smaller hole dopings we see a complex lamellar structure of antiferromagnetic and disordered regions, with a suppressed chemical potential shift, a possible marker of incommensurate ordering in the form of microscopic stripes. An investigation of the renormalization-group flows for the isotropic two-dimensional tJ model also shows a clear pre-signature of the τ phase, which in fact appears with finite transition temperatures upon addition of the smallest interplane coupling.
Keywords:74.72.-h Cuprate superconductors (high-Tc and insulating parent compounds)  71.10.Fd Lattice fermion models (Hubbard model, etc.)  05.30.Fk Fermion systems and electron gas  74.25.Dw Superconductivity phase diagrams
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